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昆虫V-ATP酶,一种为次级主动转运供能的质膜质子泵:昆虫离子转运上皮细胞中存在V-ATP酶的免疫学证据

THE INSECT V-ATPase, A PLASMA MEMBRANE PROTON PUMP ENERGIZING SECONDARY ACTIVE TRANSPORT: IMMUNOLOGICAL EVIDENCE FOR THE OCCURRENCE OF A V-ATPase IN INSECT ION-TRANSPORTING EPITHELIA.

作者信息

Klein U

出版信息

J Exp Biol. 1992 Nov 1;172(Pt 1):345-354. doi: 10.1242/jeb.172.1.345.

DOI:10.1242/jeb.172.1.345
PMID:9874747
Abstract

Active electrogenic K+ transport in insects serves as the energy source for secretion or absorption in gastrointestinal epithelia or for the receptor current in sensory epithelia. In the larval midgut of the tobacco hornworm Manduca sexta, a vacuolar-type proton pump (V-ATPase) and a K+/nH+ antiport represent the functional elements of the potassium pump. Several immunological findings support the hypothesis that active K+ transport in other insect epithelia may also be energized by a V-ATPase. In immunoblots, crude homogenates of sensilla-rich antennae and Malpighian tubules of M. sexta cross reacted with an immune serum directed to the purified plasma membrane V-ATPase from the midgut; the M. sexta midgut V-ATPase cross reacted with polyclonal antibodies to endomembrane V-ATPases from xenic origin. In immunocytochemical investigations of larvae of M. sexta and adults of Antheraea pernyi, monoclonal antibodies to defined subunits of the purified midgut V-ATPase or polyclonal antibodies to xenic endomembrane V-ATPase labelled the sites of active K+ transport: the goblet cell apical membrane in the midgut, the brush border of Malpighian tubules and the apical projections of the auxiliary cells in antennal sensilla. The functional mechanism of a primary H+-pumping V-ATPase and a secondary H+-dependent K+ transport postulated for K+-transporting insect epithelia may be further applicable to active Na+ or Cl- transport and would provide a unifying concept for all ouabain-insensitive electrogenic ion transport in insects. The findings from the midgut investigations, however, are the first instance in which a V-ATPase provides an alternative to the Na+/K+-ATPase in energizing secondary active transport in animal plasma membranes.

摘要

昆虫中主动的生电钾离子转运为胃肠道上皮细胞的分泌或吸收以及感觉上皮细胞中的受体电流提供能量来源。在烟草天蛾烟草天蛾幼虫的中肠中,液泡型质子泵(V-ATPase)和钾离子/氢离子反向转运体是钾离子泵的功能元件。多项免疫学研究结果支持这样的假说,即其他昆虫上皮细胞中的主动钾离子转运也可能由V-ATPase提供能量。在免疫印迹中,烟草天蛾富含感觉器的触角和马氏管的粗匀浆与针对从中肠纯化的质膜V-ATPase的免疫血清发生交叉反应;烟草天蛾中肠V-ATPase与来自异种来源的内膜V-ATPase的多克隆抗体发生交叉反应。在烟草天蛾幼虫和柞蚕成虫的免疫细胞化学研究中,针对纯化的中肠V-ATPase特定亚基的单克隆抗体或针对异种内膜V-ATPase的多克隆抗体标记了主动钾离子转运的部位:中肠中的杯状细胞顶端膜、马氏管的刷状缘以及触角感觉器中辅助细胞的顶端突起。推测用于钾离子转运昆虫上皮细胞的初级氢离子泵V-ATPase和次级氢离子依赖性钾离子转运的功能机制可能进一步适用于主动钠离子或氯离子转运,并将为昆虫中所有哇巴因不敏感的生电离子转运提供一个统一的概念。然而,中肠研究的结果是V-ATPase在为动物质膜中的次级主动转运提供能量方面替代钠钾ATP酶的首个实例。

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